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  Multidisciplinary study of thorium mobility: formation of turkestanite and steacyite analogues, and structural insights using an XRD-directed microcrystal preparation technique

Stachowicz, M., Bagiński, B., Harlov, D. E., Jokubauskas, P., Kotowski, J., Matyszczak, W., Dąbrowska, A., Macdonald, R. (2025): Multidisciplinary study of thorium mobility: formation of turkestanite and steacyite analogues, and structural insights using an XRD-directed microcrystal preparation technique. - Acta Crystallographica Section B: Structural Science, Crystal Engineering and Materials, 81, Part 4, 418-426.
https://doi.org/10.1107/S2052520625004822

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 Creators:
Stachowicz, M.1, Author
Bagiński, B.1, Author
Harlov, D. E.2, Author                 
Jokubauskas, P.1, Author
Kotowski, J.1, Author
Matyszczak, W.1, Author
Dąbrowska, A.1, Author
Macdonald, R.1, Author
Affiliations:
1External Organizations, ou_persistent22              
23.1 Inorganic and Isotope Geochemistry, 3.0 Geochemistry, Departments, GFZ Publication Database, GFZ Helmholtz Centre for Geosciences, ou_146040              

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Free keywords: microcrystal preparation; single-crystal X-ray diffraction; turkestanite; steacyite; hydro­thermal alteration; rare earth element.
 Abstract: Minerals of the ekanite group typically contain Th, U or REE (rare earth elements) as primary structural constituents. The CNa analogues of turkestanite, AThB(Ca,Na)C(K1–x□x)T(Si8O20) (□ is vacancy), and steacyite, AThB(Ca,Na)C(K1–x□x)T(Si8O20), isostructural minerals of the ekanite group, were experimentally synthesized during hydro­thermal alteration of chevkinite-(Ce). The experiment was conducted at 550°C, 200 MPa, at an oxygen fugacity approximately equivalent to the Ni–NiO (NNO) buffer with NaF and Ca(PO4)2 added to the hydrous fluid. Both phases formed as a replacement of chevkinite-(Ce) and earlier alteration products. Their identity was confirmed by electron probe microanalysis and electron backscatter diffraction as CNa analogues of turkestanite and steacyite. Further SCXRD, and Raman spectroscopy analyses confirmed that it is a new CNa analogue with respect to the ekanite mineral group. Raman spectroscopy revealed the presence of H2O within the crystal structure. A dedicated FIB workflow was designed to extract single crystals ready for SCXRD analysis. Compositionally, the phase is Na rich and depleted in K, REE and Fe. The mean formula based on 20 O atoms can be written as A(Th0.94U0.03)0.97B(Na0.96Ca0.90Mn0.11Ce0.02Nd0.01Fe0.01)2.0C(Na0.83K0.07)0.9TSi8.05O20·0.1C(H2O). It crystallizes in space group P4/mcc with a = 7.4757 (2) Å, c = 14.9658 (7) Å, V = 836.38 (6) Å3, and Z = 2. Compositional variation is represented mainly by the relationship Ca2+ + □ → 2Na+, where □ is a vacancy which can also be filled by H2O during crystallization. The synthesis from this study represents the first record of CNa analogues of turkestanite and steacyite. A dedicated microcrystal selection technique is presented allowing for easy single-crystal X-ray diffraction.

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Language(s): eng - English
 Dates: 2025-07-042025
 Publication Status: Finally published
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 Rev. Type: -
 Identifiers: DOI: 10.1107/S2052520625004822
GFZPOF: p4 T8 Georesources
OATYPE: Hybrid Open Access
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Title: Acta Crystallographica Section B: Structural Science, Crystal Engineering and Materials
Source Genre: Journal, SCI, Scopus
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Pages: - Volume / Issue: 81, Part 4 Sequence Number: - Start / End Page: 418 - 426 Identifier: Publisher: International Union of Crystallography
CoNE: https://gfzpublic.gfz.de/cone/journals/resource/202511211